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February 5, 2026PlantsOpen Access

Physiological and Biochemical Mechanisms Behind Enhanced Salinity Tolerance in Limonium irtaense Seedlings Following Recovery from Salt Stress

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Authors

DMDiana M. MirceaASAdrián Sapiña-SolanoEMEloy Molina

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Overview

Assesses how salinity affects seedling performance in Limonium irtaense, suggesting improved conservation methods.

Key Points

  • This study investigates how salt stress affects the germination and growth of Limonium irtaense seedlings to support conservation efforts.
  • Germination tested with 0 to 300 mM NaCl.
  • Seedlings grown under control and salt treatments (300 mM and 600 mM NaCl).
  • Physiological and biochemical parameters measured, including growth, pigments, osmolytes, and ion contents.
  • Germination decreased with increasing salinity, but salt-inhibited seeds recovered well.
  • Seedlings from salt-primed seeds had higher survival rates and biomass.
  • Salt treatments reduced growth overall, but enhanced proline, ion transport, and potassium retention contributed to higher tolerance.

Cite This Study

Mircea et al. (2026) studied this question.

synapsesocial.com/papers/698433c8f1d9ada3c1fb137chttps://doi.org/10.3390/plants15030451
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Salinity induces dose-dependent metabolic reprogramming while maintaining apparent growth stability in Limonium irtaense2026
  2. 2Influence of abiotic factors on the germination of an endemic sea lavender: First steps to shape local assemblage2024
  3. 3Do bacterial root endophytes contribute to growth in saline conditions? A pre-reintroduction cultivation study of threatened saltmarsh Limonium species2024
  4. 4Salinity-Induced Changes in Morphological and Physiological Traits of Lettuce During Early Development2025
  5. 5Growth, Physiological, and Biochemical Responses of a Medicinal Plant Launaea sarmentosa to Salinity2024 · 4 citations